Green electricity will become the fuel of the future
We design and invest in Power-to-X plants that convert surplus renewable energy into hydrogen and other green fuels for industry and transport.
From renewable energy to green fuel
Green electricity
Wind and solar energy electrolyze water into hydrogen without CO2 emissions.
Electrolysis & synthesis
Hydrogen is further converted into ammonia, methanol, or other e-fuels as needed.
Industrial application
Green fuel for heavy transport, shipping, and industrial processes.
How does it actually hang together?
Electrolysis
Water is split into hydrogen and oxygen using electricity. Alkaline electrolysis and PEM electrolysis are the most mature technologies, with a typical power consumption of about 50-55 kWh per kg of hydrogen produced.
Ammonia as a hydrogen carrier
Pure hydrogen is difficult and space-consuming to store and transport. Ammonia (NH3) binds the hydrogen chemically, can be stored in liquid form at moderate pressure, and fits into the existing global infrastructure for fertilizers and chemicals.
Dynamic operation
The latest Power-to-X plants operate dynamically — the electrolysis follows wind and solar production hour by hour, instead of drawing a constant, fixed load from the grid.
Where is green fuel used?
Hydrogen and e-fuels are particularly relevant where direct electrification is difficult or impossible.
Heavy transport & shipping
Trucks, ferries, and ships with long ranges and high energy demands can be refueled with green hydrogen or e-fuels where batteries take up too much space.
Industry & fertilizer
Ammonia produced from green hydrogen can replace fossil-based ammonia in fertilizer production and other heavy industry.
Aviation
E-kerosene (SAF) produced from green hydrogen is one of the few realistic pathways to reducing CO2 emissions from aviation.
The world's first dynamic Power-to-Ammonia plant is located in Denmark
REDDAP in Ramme (Lemvig Municipality) is one of the most ambitious Power-to-X projects in the world — a collaboration between Skovgaard Energy, Topsoe, and Vestas, supported by EUDP. The facility demonstrates what dynamic Power-to-X can achieve in practice and where the technology stands today.
The facility
The result
Source: Skovgaard Energy / REDDAP (reddap.dk), 2026. REDDAP (Renewable Dynamic Distributed Ammonia Plant) is not a Meganet project, but is highlighted as an industry benchmark for how far dynamic Power-to-X technology has advanced in Denmark.
How to develop a Power-to-X project
Resource analysis
We are evaluating available renewable energy, grid access, and offtake opportunities.
Design & permits
Facility design and handling of regulatory approvals.
Funding
We are structuring the project together with investors and energy funds.
Construction & operation
The facility is being built, commissioned, and continuously optimized during operation.
Grey hydrogen vs. green hydrogen
The vast majority of the world's hydrogen is currently produced from fossil sources. Green hydrogen fundamentally changes that.
Grey hydrogen (traditional)
Green hydrogen (Power-to-X)
Good to know about Power-to-X
What is Power-to-X in its simplest terms?
Power-to-X covers technologies that convert green electricity into other energy carriers, typically hydrogen, which can then be further converted into fuels such as ammonia, methanol, or e-kerosene.
What is the difference between green and grey hydrogen?
Grey hydrogen is produced from natural gas and emits CO2. Green hydrogen is produced by electrolysis of water using power from renewable energy sources and is virtually emission-free.
Why convert hydrogen into other fuels?
Hydrogen is difficult and space-consuming to transport and store in its pure form. Ammonia, methanol, and e-kerosene are easier to handle and are compatible with existing infrastructure in industry and transport.
How does Power-to-X relate to your other solutions?
A Power-to-X plant requires stable access to green power. Our wind, solar, and battery solutions, as well as our VPP platform, can supply and balance the power required by the electrolysis process.
Can you invest in a Power-to-X project through Meganet?
Yes. As with our other projects, investors can participate in specific Power-to-X plants — see the opportunities under Investor Relations.
How long does it take to develop a Power-to-X plant?
It varies significantly depending on the size and complexity of the facility, but projects from resource analysis to operation typically span several years, primarily driven by financing, regulatory approvals, and grid connection.
What does "dynamic operation" of a Power-to-X plant mean?
A dynamic plant continuously adjusts the electrolysis load according to the available amount of wind and solar power, instead of running at a constant, fixed load. This requires a control platform that can react quickly to fluctuating production — the same type of task that our VPP and EMS platform performs for batteries and load banks.
How is green hydrogen converted into sustainable aviation fuel (SAF)?
Green hydrogen can be combined with sustainable carbon — for example from biogas — to form e-kerosene (Sustainable Aviation Fuel). Projects of this type are already under development in Denmark, where green power from wind and solar farms is combined with biogas plants to supply the necessary raw materials.
Is the REDDAP facility in Ramme a Meganet project?
No. REDDAP was developed by Skovgaard Energy in partnership with Topsoe and Vestas. We highlight it as an industry benchmark because it is the world's first dynamic Power-to-Ammonia plant and a clear illustration of where Power-to-X technology stands today.
Do you want to join the next Power-to-X project?
Book en uforpligtende samtale med vores team. Vi kortlægger jeres potentiale og viser, hvad en løsning fra Meganet konkret kan betyde for jer.
